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宋立榮

(國家水生生物種質資源庫副主任)

鎖定
宋立榮,男,博士、研究員、博士生導師。國家水生生物種質資源庫副主任,淡水藻種庫主任。研究領域為藻類生物學與藻種資源保護利用。聚焦藍藻水華、藍藻毒素等科學和技術問題,在宏觀和微觀層面上系統地加以研究,在本領域國際主流刊物上發表了百餘篇論文,獲得授權專利十餘項。 [1]  1996年以來,從事淡水藻種庫的管理和研究,為藻種資源服務科研和產業發展做出了貢獻, 提升了我國藻種資源保藏和利用的能力。 [2]  擔任中國科學院藻類生物學重點實驗室副主任、中國科學院生物遺傳資源庫工委會委員、農業部“淡水微藻種質資源收集與育種崗位科學家”(2017-2020)。作為主要骨幹,獲省部級科技獎一等獎三項。培養博士和碩士研究生五十餘名。 [3] 
中文名
宋立榮
出生日期
1961年2月
畢業院校
南京大學,中國科學院水生生物研究所 [3] 
職    業
國家水生生物種質資源庫副主任、中國科學院藻類生物學重點實驗室副主任、淡水藻種庫主任 [1] 
主要成就
藍藻水華暴發機理研究、淡水藻種資源保藏與利用 [3] 
出生地
江蘇鹽城市建湖縣

宋立榮教育背景

1978.9-1982.7:南京大學生物系植物學專業,學士;
1982-1988:中國科學院水生生物研究所,理學博士;
1991-1993:澳大利亞國立大學訪問學者;

宋立榮研究方向

研究方向:1、藍藻水華生態學和生物學;2、藍藻毒素和藍藻異味;3、水體生態修復技術和應用;4、藻種資源的保藏和應用。

宋立榮研究成果

1、 在藍藻水華暴發機制研究方面,從生理層面系統研究了微囊藻利用營養鹽和響應主要環境要素的特性,發現羣體微囊藻在營養鹽利用、光合活性等方面具有顯著的優勢;從個體、種羣水平上,揭示了滇池優勢藍藻種屬競爭和演替的驅動力,從生態系統層面闡述了藍藻水華為何在滇池呈現並能長期維持;從比較湖沼學角度,闡述了太湖、滇池和巢湖的藍藻羣落變化主要受到物理環境、浮游動物生物量及兩者間交互作用的影響,研究結果為制定湖泊營養鹽閾值和藍藻水華的控制提供了參考依據;
2、 在藍藻毒素研究方面,揭示了太湖北部湖區藍藻毒素在水柱中、底泥中及水生生物體內的來源、分佈、遷移、歸宿;通過藍藻水華(自然和人為處置)與環境污染物遷移及風險研究,綜合評價了藻源污染物(即藻毒素及藻介導之其他環境污染物)的生態系統和人類健康風險。推動並參與制定了二項藍藻微囊藻毒素國家標準。研製的藍藻毒素檢測試劑盒為我國眾多環境監測部門和科研單位採用。作為國內較早開展藻類異味的團隊,系統開展了典型湖庫異味的溯源和產異味藻類的生理學研究;
3、 在重污染湖泊治理和生態修復方面,通過對高原湖泊-滇池生態系統結構和功能的系統調查和分析,提出了滇池生態系統分區分步恢復的思路和技術方案,並在滇池重污染湖灣的開展生態修復重建的中試,取得了良好的示範效果,為滇池及類似污染湖灣的污染控制和生態重建探索了一條可借鑑的技術思路和示範技術;
4、 在淡水微藻資源的研究和利用方面,致力於國家水生生物種質資源庫-淡水藻種庫的業務管理。二十年多來,堅持分離、收集我國不同地區的藻種資源,堅持為科研和產業界提供優質藻種;聯合研究團隊和骨幹企業,將藻種資源優勢轉化為科研和產品創新的能力,服務於科研和產業的創新和發展的要求。 [3] 
數次應邀在國內外學術會議上作特邀或主旨報告,2011年兩次受邀在國際學術大會上作大會特邀報告;第九屆國際產毒藍藻大會(ICTC9,南非2013年8月)組委會委員 [4]  ;2016年10月在武漢成功主持了第十屆國際產毒藍藻大會。 [5] 

宋立榮科研項目

先後承擔國家級科研項目數十項,如:
國家重點基礎研究發展計劃(973計劃)“大中型淺水湖泊藍藻水華暴發機制研究”(2008-2012),首席科學家; [6] 
國家水體污染控制與治理科技重大專項“湖泊生態系統退化調查與修復途徑關鍵技術及工程示範”(2008-2012),課題負責;
國家自然科學基金委-雲南聯合基金“滇池藍藻水華時空演替及驅動機制研究”(2009-2012),項目負責;
國家高技術研究發展計劃(863計劃)“微藻生物固碳關鍵技術與產品開發”(2014-2016),技術首席;
國家自然科學基金國際合作項目“淺水和深水湖泊藍藻微囊藻水華形成機制:應用新方法研究產毒種羣的時空結構”(2015-2018),項目負責;
國家重點研發計劃-政府間國際科技創新合作重點專項“在自然水華和人工水體中控制有毒藍藻水華的新興方法”(2019-2021),項目負責; [3] 

宋立榮學術任職

中國海洋湖沼學會藻類學分會 理事長(2011-2015)
國際應用藻類學會(ISAP)執行委員 (2017-2020) [7] 
中國藻類學會 常務理事 [3] 

宋立榮期刊編委

國際期刊:
Ecological Informatics(2006-)
Journal of Environmental Sciences(2013-)
國內期刊:
水生生物學報》編委 [9] 
《湖泊科學》副主編 [10] 

宋立榮學術榮譽

江蘇省科學技術獎一等獎(2014,排名第三) [11] 
國家環境保護部-環境保護科學技術獎一等獎(2009,排名第四) [12] 
上海市科技進步一等獎(2003,排名第二) [13] 
其他獎勵
中國科學院研究生院優秀教師(2006)
中國科學院“特色精品課程建設”項目教學成果二等獎(2008,排名第一) [3] 
首屆全國野外科技工作先進個人(2009) [14] 
中國科學院優秀共產黨員(2011) [15] 

宋立榮主要著作

藍藻水華形成過程及其環境特徵研究 - 孔繁翔, 宋立榮. 科學出版社, 2011年. [16] 
本書可供湖泊科學、環境科學、環境監測、生態學、藻類生物學和湖泊富營養化過程與藍藻水華形成機制等領域的研究人員、環境保護管理人員及大專院校的師生參考。
滇池流域水污染治理與富營養化控制技術研究 - 郭懷成, 賀彬, 宋立榮, 段昌羣, 徐曉梅, 羅毅, 劉永. 中國環境出版社, 2017年. [17] 
本書系統梳理了滇池的治理歷程,闡明瞭水專項的立項依據和主要目的,分析了主要的技術研發、問題診斷和工程示範。
滇池流域水污染治理與富營養化控制技術研究 滇池流域水污染治理與富營養化控制技術研究
巢湖浮游植物圖譜 -張琪, 宋立榮, 李林, 劉剛, 唐曉先. 中國環境出版社, 2018年. [18] 
2015年以來,中國科學院水生生物研究所與安徽省巢湖管理局通力合作,逐月對巢湖的浮游植物進行定性定量採集、鑑定、計數和拍照,歷時三年,終成《巢湖浮游植物圖譜》。本圖譜共彙集了7門75屬藻類的圖片,並簡要描述了其分類地位、形態特徵和生境信息。
                  巢湖浮游植物圖譜 巢湖浮游植物圖譜

宋立榮代表論著

(*通訊作者,#共同第一作者)
宋立榮*, 張琪, 鄭凌凌, 李天麗, 杜帆. 微藻種質資源庫——藻類科學研究和產業發展的重要平台[J]. ACTA HYDROBIOLOGICA SINICA, 2020, 44(5): 1020-1027. [19] 
宋立榮*, 張琪. 繼往開來守護藻種資源——記中國科學院淡水藻種庫的傳承和發展[J].生命世界,2020(02):10-13. [20] 
Ilia Ostrovsky#, Sha Wu#, Lin Li*, Lirong Song. 2020. Bloom-forming toxic cyanobacterium Microcystis: Quantification and monitoring with a high-frequency echosounder, Water Research, 183, 116091. [21] 
Meng-Yun Chen,Wen-Kai Teng,Liang Zhao,Chun-Xiang Hu,Yang-Kai Zhou,Bo-Ping Han*,Li-Rong Song*,Wen-Sheng Shu*. 2020. Comparative genomics reveals insights into cyanobacterial evolution and habitat adaptation. The ISME Journal. DOI: 10.1038/s41396-020-00775-z. [22] 
Lu Z., Dai J., Zheng L. Teng Z., Zhang Q., Qiu D., Song L.*, 2020. Disodium 2-oxoglutarate promotes carbon flux into astaxanthin and fatty acid biosynthesis pathway in Haematococcus, Bioresource Technology, 299,122612. [23] 
Lu, Z., Zheng, L., Liu, J., Dai, J., and Song, L*. 2019. A novel fed-batch strategy to boost cyst cells production based on the understanding of intracellular carbon and nitrogen metabolism in Haematococcus pluvialis. Bioresource Technology 289, 121744. [24] 
Bai F., Jia Y., Yang C., Li T., Wu Z., Liu J., Song L.*, 2019. Multiple physiological response analyses aid the understanding of sensitivity variation between Microcystis aeruginosa and Chlorella sp. under paraquat exposures, Environmental Sciences Europe,31(1),1-17. [25] 
Cui H., Yang Z., Lu Z., Wang Q., Liu J., Song L.*, 2019. Combination of utilization of CO2 from flue gas of biomass power plant and medium recycling to enhance cost-effective Spirulina production, J Appl Phycol 31, 2175–2185. [26] 
Shan, K*; Song, LR*; Chen, W; Li, L; Liu, LM; Wu, YL; Jia, YL; Zhou, QC; Peng, L. 2019. Analysis of environmental drivers influencing interspecific variations and associations among bloom-forming cyanobacteria in large, shallow eutrophic lakes. Harmful Algae, 84: 84-94. [27] 
Shan, K*; Shang, MS; Zhou, BT; Li, L; Wang, XX; Yang, H; Song, LR*. 2019. Application of Bayesian network including Microcystis morphospecies for microcystin risk assessment in three cyanobacterial bloom-plagued lakes, China. Harmful Algae, 83: 14-24. [28] 
Jia, YL*; Chen, QQ; Crawford, SE; Song, LR; Chen W; Hammers-Wirtz, M; Strauss, T; Seiler, TB; Schaffer, A; Hollert, H. 2019. Cyanobacterial blooms act as sink and source of endocrine disruptors in the third largest freshwater lake in China. Environmental Pollution, 245: 408-418. [29] 
Wu Y., Huang L., Wang Y., Li L., Li G., Xiao B., Song L.*, 2019. Reducing the Phytoplankton Biomass to Promote the Growth of Submerged Macrophytes by Introducing Artificial Aquatic Plants in Shallow Eutrophic Waters, Water, 11(7):1370 [30] 
Zheng, LL#; Lu, Z#; Zhang, Q; Li, TL; Song, LR*. 2018. A fluorescence ratio-based method to determine microalgal viability and its application to rapid optimization of cryopreservation. Cryobiology, 81: 27-33. [31] 
Zhao, L; Song, YL; Li, L; Gan, NQ; Brand, JJ; Song, LR*. 2018. The highly heterogeneous methylated genomes and diverse restriction-modification systems of bloom-forming Microcystis. Harmful Algae, 75:87-93. [32] 
Zhang, Q; Zheng, LL; Li, TL; Li, RH; Song, LR*. 2018. Aliteralla shaanxiensis (Aliterellaceae), a new coccoid cyanobacterial species from China. Phytotaxa, 374(3): 211-220. [33] 
Zhang, Q; Zheng, LL; Li, TL; Liu, GX; Song, LR*. 2018. Morphology and phylogeny of three planktonic Radiococcaceae sensu lato species (Sphaeropleales, Chlorophyceae) from China, including the description of a new species Planktosphaeria hubeiensis sp. nov. Fottea, Olomouc, 18(2): 243–255. [34] 
Lin, LZ; Shan, K; Xiong, Q; Zhou, QC; Li, L; Gan, NQ; Song, LR*. 2018. The ecological risks of hydrogen peroxide as a cyanocide: its effect on the community structure of bacterioplankton. Journal of Oceanology and Limnology, 36(6): 2231-2242. [35] 
Zhou, QC*; Li, L; Huang, LC; Guo, LL; Song, LR*. 2018. Combining hydrogen peroxide addition with sunlight regulation to control algal blooms. Environmental Science and Pollution Research, 25(3): 2239-2247. [36] 
Jia, YL; Li, HL; Qu, YM; Chen, W*; Song, LR*. 2018. Phytotoxicity, bioaccumulation and potential risks of plant irrigations using cyanobloom-loading freshwater. Science of the Total Environment, 624: 704-712. [37] 
Jia, YL; Chen, W; Zuo, YX; Lin, LZ; Song, LR*. 2018. Heavy metal migration and risk transference associated with cyanobacterial blooms in eutrophic freshwater. Science of the Total Environment, 613-614: 1324-1330. [38] 
Zuo, J; Chen, LT; Shan, K; Hu, LL; Song, LR*; Gan, NQ*. 2018. Assessment of different mcy genes for detecting the toxic to non-toxic Microcystis ratio in the field by multiplex qPCR. Journal of Oceanology and Limnology, 36(4): 1132-1144. [39] 
Li, RH*, Song, LR; Philip T. ORR. 2018. Cyanobacteria and cyanotoxins: responses and detection. Journal of Oceanology and Limnology, 36( 4): 1029-1031. [40] 
甘南琴,魏 念,宋立榮*. 2017. 微囊藻毒素生物學功能研究進展 [J]. 湖泊科學,29(01):1-8.
Chen, W*; Jia, YL; Liu, AY; Zhou, QC; Song, LR*. 2017. Simultaneous elimination of cyanotoxins and PCBs via mechanical collection of cyanobacterial blooms: An application of "green-bioadsorption concept". Journal of Environmental Sciences, 57: 118-126. [41] 
Ding, Y; Gan, NQ; Liu, J; Zheng, LL; Li, L*; Song, LR. 2017. Survival, recovery and microcystin release of Microcystis aeruginosa in cold or dark condition. Chinese Journal of Oceanology and Limnology, 35(2): 313-323. [42] 
Wu, S; Song, LR; Sommerfeld, M; Hu, Q; Chen, W*. 2017. Optimization of an effective method for the conversion of crude algal lipids into biodiesel. Fuel, 197: 467-473. [43] 
Zhang, T*; Li, L; Zheng, LL; Song, LR*. 2017. Effects of nutritional factors on the geosmin production of Lyngbya kuetzingii UTEX 1547 (Oscillatoriales, Cyanobacteria). Phycologia, 56(2): 221-229. [44] 
Zhu, L.; Zancarini, A.; Louati, I.;De, C. S.; Duval, C.; Tambosco, K.;Bernard, C.; Debroas, D.; Song, L. R.;Leloup, J.; Humbert, J–F.*, Bacterial Communities Associatedwith Four Cyanobacterial GeneraDisplay Structural and FunctionalDifferences: Evidence from anExperimental Approach. Frontier in Microbiology 2016, 7:1662.
Zhou, Q. C.; Zhang, Y. L.*; Lin, D. M; Shan, K.; Luo, Y.; Zhao, L.; Tan, Z. W.; Song, L. R.*, The relationships of meteorological factors and nutrient levels with phytoplankton biomass in a shallow eutrophic lake dominated by cyanobacteria, Lake Dianchi from 1991 to 2013. Environmental Science and Pollution Research 2016, 23: 15616.
Wei, N.; Hu, L. L.; Song, L. R.*; Gan, N. Q.*, Microcystin-bound protein patterns in different cultures of Microcystis aeruginosa and field samples. Toxins 2016, 8, 293.
Hu, L. L.; Shan, K.; Lin, L.; Shen, W.; Huang, L. C.; Gan, N. Q.; Song, L. R.*, Multi-year assessment of toxic genotypes and microcystin concentration in northern Lake Taihu, China. Toxins2016, 8, 23.
Qiao, Q.*; Huang, Y. Y.*; Qi, J.; Qu, M.Z.; Jiang, C.; Lin, P. C.; Li, R. H.; Song, L. R.; Yonezawa, T.; Hasegawa, M.; Crabbe, M .J. C.; Chen, F.; Zhang, T. C.; Zhong, Y.,The genome and transcriptome of Trichormus sp NMC-1: insights into adaptation to extreme environments on the Qinghai-Tibet Plateau.Scientific Reports 2016, 6, 29404
Jiang, J. H.; Zhang, N.; Yang, X. J.; Song, L. R.; Yang, S.*, Toxic metal biosorption by macrocolonies of cyanobacterium Nostoc sphaeroides Kutzing. Journal of Applied Phycology 2016, 28, 4: 2265-2277.
Feng, W. Y.; Zhu, Y. R.*; Wu, F. C.*; Meng, W.; Giesy, J.; He, Z. Q.; Song, L. R.; Fan, M.,Characterization of phosphorus forms in lake macrophytes and algae by solution P-31 nuclear magnetic resonance spectroscopy. Environmental Science and Pollution Research 2016,23, 8: 7288-7297.
Zhu, L.*; Zuo, J.; Song, L. R.*; Gan, N. Q.*,Microcystin-degrading bacteria affect mcyD expression and microcystin synthesis in Microcystis spp.. Journal of Environmental Sciences 2016, 41: 195-201.
Wu, Y.L., Li, L., Zheng, L.L., Dai, G.Y., Ma, H.Y., Shan, K., Wu, H.D., Zhou, Q.C., Song, L.R.*,Patterns of succession between bloom-forming cyanobacteria Aphanizomenon flos-aquae and Microcystis and related environmental factors in large, shallow Dianchi Lake, China. Hydrobiologia 2016, 765:1–13.
Ma, H. Y.; Wu, Y. L.; Gan, N. Q.; Zheng, L. L.; Li, T. L.; Song, L. R.*, Growth inhibitory effect of Microcystis on Aphanizomenon flos-aquae isolated from cyanobacteria bloom in Lake Dianchi, China. Harmful Algae 2015, 42, 43-51.
Jiang, J.; Zhang, N., Yang; X., Song, L. R.; Yang, S.*, Toxic metal biosorption by macrocolonies of cyanobacterium Nostoc sphaeroides Kützing. Journal of Applied Phycology 2015, 28, 2265–2277.
Wu, X. Q.*; Wang, C. B.; Tian, C. C.; Xiao, B. D.; Song, L. R.*, Evaluation of the potential of anoxic biodegradation of intracellular and dissolved microcystins in lake sediments. Journal of Hazardous Materials 2015, 286, 395-401.
Jia, M. K.*; Hu, X. L.; Wang, S. L.; Huang, Y. P.*; Song, L. R.*, Photocatalytic properties of hierarchical BiOXs obtained via an ethanol-assisted solvothermal process. Journal of Environmental Sciences 2015, 35, 172-180.
Wang, S. Q.; Zhu, L.; Li, Q.; Li, G. B.; Li, L.; Song, L. R.; Gan, N. Q.*, Distribution and population dynamics of potential anatoxin-a-producing cyanobacteria in Lake Dianchi, China. Harmful Algae 2015, 48, 63-68.
Dai, G. F.; Zhong, J. Y.*; Song, L. R.*; Guo, C. J.; Gan, N. Q.; Wu, Z. B., Harmful algal bloom removal and eutrophic water remediation by commercial nontoxic polyamine-co-polymeric ferric sulfate-modified soils. Environmental Science and Pollution Research 2015, 22 (14), 10636-10646;
Wang, Z.; Zhang, J. Q.;Song, L. R.; Li, E. H.*; Wang, X. L.; Xiao, B. D.*, Effects of linear alkylbenzene sulfonate on the growth and toxin production of Microcystisaeruginosa isolated from Lake Dianchi. Environmental Science and Pollution Research 2015, 22 (7), 5491-5499.
Bai, S. J.; Dai, J. C.; Xia, M.; Ruan, J.; Wei, H. H.; Yu, D. Z.; Li, R. H.; Jing, H. M.; Tian, C. Y.; Song, L. R.; Qiu, D. R.*, Effects of intermediate metabolite carboxylic acids of TCA cycle on Microcystis with overproduction of phycocyanin. Environmental Science and Pollution Research 2015, 22 (7), 5531-5537.
Song, L.R.*, Zhang Q, Zheng L L, et al. The freshwater algae culture collection at the Institute of Hydrobiology (FACHB): algal resources for fundamental and applied research [J]. Algological Studies, 2014, 145: 5-14.
Zhou, Q.C., Chen, W., Shan, K., Zheng, L.L., Song, L.R.*, (2014). Influence of sunlight on the proliferation of cyanobacterial blooms and its potential applications in Lake Taihu, China. Journal of Environmental Sciences-China 26, 626-635.
Zhu, L., Wu, Y.L., Song, L.R.*, Gan, N.Q.*, (2014). Ecological Dynamics of Toxic Microcystis spp. and Microcystin-Degrading Bacteria in Dianchi Lake, China. Applied and Environmental Microbiology 80, 1874-1881.
Wu, Y.L., Li, L., Gan, N.Q., Zheng, L.L., Ma, H.Y., Shan, K., Liu, J., Xiao, B.D., Song, L.R.*, (2014). Seasonal dynamics of water bloom-forming Microcystis morphospecies and the associated extracellular microcystin concentrations in large, shallow, eutrophic Dianchi Lake. Journal of Environmental Sciences-China 26, 1921-1929.
Shan, K.,LI, L.,WANG, X.X.,WU, Y.L.,HU, L.L.,YU, G.L., Song, L.R.*, (2014). Modelling ecosystem structure and trophic interactions in typical cyanobacterial bloom-dominated shallow Lake Dianchi, China. Ecological Modelling 291: 82-95.
Ding, Yi, Song, Lirong, & Sedmak, Bojan*. (2013). UVB radiation as a potential selective factor favoring microcystin producing bloom forming Cyanobacteria. PLoS One, 8(9), e73919.
Liu, Aiqiu, Zhu, Tao, Lu, Xuefeng*, &Song, Lirong. (2013). Hydrocarbon profiles and phylogenetic analyses of diversified cyanobacterial species. Appl. Energy, 111, 383-393.
Yang, Chen, Zhang, Wei, Ren, Minglei, Song, Lirong, Li, Tao*, & Zhao, Jindong*. (2013). Whole-Genome Sequence of Microcystis aeruginosa TAIHU98, a Nontoxic Bloom-Forming Strain Isolated from Taihu Lake, China. Genome Announc, 1(3).
Yang, Wanwan, Tang, Zepei, Zhou, Fanqi, Zhang, Weihao*, &Song, Lirong. (2013). Toxicity studies of tetracycline on Microcystis aeruginosa and Selenastrum capricornutum. Environ. Toxicol. Pharmacol., 35(2), 320-324.
Zhou, Qichao, Wei, Nian, Zheng, Lingling, &Song, Lirong*. (2013). Host re-identification of cyanophage PP and its implications for host range and specificity. Virol Sin, 28(5), 306-308.
Chen, W.*, Jia, Y., Li, E., Zhao, S., Zhou, Q., Liu, L., andSong, L*. (2012) Soil-Based Treatments of Mechanically Collected Cyanobacterial Blooms from Lake Taihu: Efficiencies and Potential Risks. Environ. Sci. Technol. 46, 13370-13376
Dai, G., Quan, C., Zhang, X., Liu, J., Song, L.*, and Gan, N*. (2012) Fast removal of cyanobacterial toxin microcystin-LR by a low-cytotoxic microgel-Fe(III) complex. Water Res. 46, 1482-1489
Ding, Y., Gan, N., Li, J., Sedmak, B., andSong, L*. (2012) Hydrogen peroxide induces apoptotic-like cell death in Microcystis aeruginosa (Chroococcales, Cyanobacteria) in a dose-dependent manner. Phycologia 51, 567-575
Dong, G., Xie, S., Zhu, X.*, Han, D., Yang, Y.,Song, L., Gan, L., and Chen, W. (2012) Responses of yellow catfish (Pelteobagrus fulvidraco Richardson) exposed to dietary cyanobacteria and subsequent recovery. Toxicon 60, 1298-1306
Gan, N.#, Xiao, Y.#, Zhu, L., Wu, Z., Liu, J., Hu, C., and Song, L*. (2012) The role of microcystins in maintaining colonies of bloom-forming Microcystis spp. Environ. Microbiol. 14, 730-742
Tan, X., Ma, P., Song, L.*, and Zhang, Q. (2012) Physiological and ultrastructural responses of Microcystis aeruginosa to different phosphorus concentrations. Fresenius Environ. Bull. 21, 838-843
Wang, Z., Xiao, B.*, Song, L., Wang, C., and Zhang, J. (2012) Responses and toxin bioaccumulation in duckweed (Lemna minor) under microcystin-LR, linear alkybenzene sulfonate and their joint stress. J. Hazard. Mater. 229-230, 137-144
Wu, X., Zheng, L., andSong, L*. (2012) Development on a cryopreservation protocol of Microcystis aeruginosa using penetrating and non-penetrating cryoprotectants. Shuisheng Shengwu Xuebao 36, 344-351
Wu, Z.*, Zeng, B., Li, R., and Song, L. (2012) Combined effects of carbon and phosphorus levels on the invasive cyanobacterium, Cylindrospermopsis raciborskii. Phycologia 51, 144-150
Wu, Z.*, Zeng, B., Li, R., andSong, L. (2012) Physiological regulation of Cylindrospermopsis raciborskii (Nostocales, Cyanobacteria) in response to inorganic phosphorus limitation. Harmful Algae 15, 53-58
Zhang, J., Wang, Z., Song, Z., Xie, Z.*, Li, L., and Song, L. (2012) Bioaccumulation of microcystins in two freshwater gastropods from a cyanobacteria-bloom plateau lake, Lake Dianchi. Environ. Pollut. (Oxford, U. K.) 164, 227-234
Zhang, X.*, Song, L., Zhang, P., He, J., Liu, Y., Matsuura, H., and Watanabe, M. M. (2012) Grazing on toxic cyanobacterial blooms by tadpoles of edible frog Rana grylio. Phycol. Res. 60, 20-26
Zhou, Q.*, Chen, W., Zhang, H., Peng, L., Liu, L., Han, Z., Wan, N., Li, L., and Song, L*. (2012) A flow cytometer based protocol for quantitative analysis of bloom-forming cyanobacteria (Microcystis) in lake sediments. J. Environ. Sci. (Beijing, China) 24, 1709-1716
Zhu, C., Chen, C., Zhao, L., Zhang, Y., Yang, J.,Song, L., and Yang, S*. (2012) Bioflocculant produced by Chlamydomonas reinhardtii. J. Appl. Phycol. 24, 1245-1251
Dong, G., Zhu, X., Han, D., Yang, Y., Song, L., and Xie, S*. (2011) Response and recovery of hybrid sturgeon from subchronic oral administration of cyanobacteria. Environ Toxicol 26, 161-170
Liu, L., Li, L., Zuo, Y., Huang, Y., and Song, L*. (2011) Adsorption of 2-methylisoborneol and geosmin by a low-cost hybrid adsorbent synthesized from fly ash and bentonite. J. Water Supply: Res. Technol.--AQUA 60, 478-485
Sun, X., Mi, L., Liu, J.,Song, L.*, Chung, F.-L., and Gan, N*. (2011) Sulforaphane prevents microcystin-LR-induced oxidative damage and apoptosis in BALB/c mice. Toxicol. Appl. Pharmacol. 255, 9-17
Wang, Z., Xiao, B.*, Song, L., Wu, X., Zhang, J., and Wang, C. (2011) Effects of microcystin-LR, linear alkylbenzene sulfonate and their mixture on lettuce (Lactuca sativa L.) seeds and seedlings. Ecotoxicology 20, 803-814
Wu, X., Wu, Z., and Song, L*. (2011) Phenotype and temperature affect the affinity for dissolved inorganic carbon in a cyanobacterium Microcystis. Hydrobiologia 675, 175-186
Gan, N., Huang, Q., Zheng, L., andSong, L*. (2010) Quantitative assessment of toxic and nontoxic Microcystis colonies in natural environments using fluorescence in situ hybridization and flow cytometry. Sci China Life Sci 53, 973-980
Gan, N., Mi, L., Sun, X., Dai, G., Chung, F.-L., and Song, L*. (2010) Sulforaphane protects Microcystin-LR-induced toxicity through activation of the Nrf2-mediated defensive response. Toxicol. Appl. Pharmacol. 247, 129-137
Gan, N., Sun, X., and Song, L*. (2010) Activation of Nrf2 by Microcystin-LR Provides Advantages for Liver Cancer Cell Growth. Chem. Res. Toxicol. 23, 1477-1484
Peng, L., Liu, Y., Chen, W.*, Liu, L., Kent, M., and Song, L*. (2010) Health risks associated with consumption of microcystin-contaminated fish and shellfish in three Chinese lakes: Significance for freshwater aquacultures. Ecotoxicol. Environ. Saf. 73, 1804-1811
Wang, Z., Xiao, B.*, Wu, X., Tu, X., Wang, Y., Sun, X., and Song, L. (2010) Linear alkylbenzene sulfonate (LAS) in water of Lake Dianchi-spatial and seasonal variation, and kinetics of biodegradation. Environ. Monit. Assess. 171, 501-512
Zhang, T., Li, L.*, Zuo, Y., Zhou, Q., and Song, L*. (2010) Biological origins and annual variations of earthy-musty off-flavours in the Xionghe Reservoir in China. J. Water Supply: Res. Technol.--AQUA 59, 243-254
Zuo, Y., Li, L., Zhang, T., Zheng, L., Dai, G., Liu, L., andSong, L*. (2010) Contribution of Streptomyces in sediment to earthy odor in the overlying water in Xionghe Reservoir, China. Water Res. 44, 6085-6094
宋立榮*,陳 偉. 2009. 水華藍藻產毒的生物學機制及毒素的環境歸趨研究進展 [J]. 湖泊科學,21(6):749-757.
Chen, W., Peng, L., Wan, N., and Song, L*. (2009) Mechanism study on the frequent variations of cell-bound microcystins in cyanobacterial blooms in Lake Taihu: Implications for water quality monitoring and assessments. Chemosphere 77, 1585-1593
Chen, W., Zhang, C., Song, L., Sommerfeld, M., and Hu, Q*. (2009) A high throughput Nile red method for quantitative measurement of neutral lipids in microalgae. J. Microbiol. Methods 77, 41-47
Dong, G., Zhu, X.*, Han, D., Yang, Y., Song, L., and Xie, S. (2009) Effects of dietary cyanobacteria of two different sources on growth and recovery of hybrid tilapia (Oreochromis niloticus × O. aureus). Toxicon 54, 208-216
Gong, Y., Chou, H.-N., Tu, C.-d., Liu, X., Liu, J.*, andSong, L. (2009) Effects of arsenate on the growth and microcystin production of Microcystis aeruginosa isolated from Taiwan as influenced by extracellular phosphate. J. Appl. Phycol. 21, 225-231
Gong, Y., Song, L., Wu, X., Xiao, B., Fang, T., and Liu, J*. (2009) Effects of arsenate on microcystin content and leakage of Microcystis strain PCC7806 under various phosphate regimes. Environ. Toxicol. 24, 87-94
Hu, C., Gan, N., Chen, Y., Bi, L., Zhang, X., and Song, L*. (2009) Detection of microcystins in environmental samples using surface plasmon resonance biosensor. Talanta 80, 407-410
Song, L.*, and Chen, W. (2009) Production of microcystins in bloom-forming cyanobacteria and their environmental fates: a review. Journal of Lake Sciences 21, 749-757
Zhang, T., Li, L.*, Song, L., and Chen, W. (2009) Effects of temperature and light on the growth and geosmin production of Lyngbya kuetzingii (Cyanophyta). J. Appl. Phycol. 21, 279-285
Zuo, Y., Li, L.*, Wu, Z., and Song, L*. (2009) Isolation, identification and odour-producing abilities of geosmin/2-MIB in actinomycetes from sediments in Lake Lotus, China. J. Water Supply: Res. Technol.--AQUA 58, 552-561
Chen, W., Song, L.*, Peng, L., Wan, N., Zhang, X., and Gan, N. (2008) Reduction in microcystin concentrations in large and shallow lakes: Water and sediment-interface contributions. Water Res. 42, 763-773
Hu, C., Gan, N., He, Z., and Song, L*. (2008) A novel chemiluminescent immunoassay for microcystin (MC) detection based on gold nanoparticles label and its application to MC analysis in aquatic environmental samples. Int. J. Environ. Anal. Chem. 88, 267-277
Wan, N., Song, L*., Wang, R., and Liu, J. (2008) Spatio-temporal distribution of algal biomass in Dianchi Lake and its impact factors. Acta Hydrobiologica Sinica 32, 184-188
Wei, L., Sun, B., Song, L., and Nie, P*. (2008) Gene expression profiles in liver of zebrafish treated with microcystin-LR. Environ. Toxicol. Pharmacol. 26, 6-12
Shen, H., and Song, L*. (2007) Comparative studies on physiological responses to phosphorus in two phenotypes of bloom-forming Microcystis. Hydrobiologia 592, 475-486
Song, L.*, Chen, W., Peng, L., Wan, N., Gan, N., and Zhang, X. (2007) Distribution and bioaccumulation of microcystins in water columns: a systematic investigation into the environmental fate and the risks associated with microcystins in Meiliang Bay, Lake Taihu. Water Res. 41, 2853-2864
Chen, W., Li, L., Gan, N., and Song, L*. (2006) Optimization of an effective extraction procedure for the analysis of microcystins in soils and lake sediments. Environ. Pollut. (Amsterdam, Neth.) 143, 241-246
Chen, W., Song, L.*, Gan, N., and Li, L. (2006) Sorption, degradation and mobility of microcystins in Chinese agriculture soils: Risk assessment for groundwater protection. Environ. Pollut. (Amsterdam, Neth.) 144, 752-758
Zeng, H., Song, L.*, Yu, Z., and Chen, H. (2006) Distribution of phytoplankton in the Three-Gorge Reservoir during rainy and dry seasons. Sci. Total Environ. 367, 999-1009
Zhao, M., Xie, S.*, Zhu, X., Yang, Y., Gan, N., and Song, L. (2006) Effect of dietary cyanobacteria on growth and accumulation of microcystins in Nile tilapia (Oreochromis niloticus). Aquaculture 261, 960-966 [3]  宋立榮*,
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